Synbio Technologies는 혁신적인 합성 생물학 솔루션을 제공하여 생명과학 연구 및 개발을 지원하는 기업입니다.
The General Introduction of Gene Synthesis
Standard gene synthesis is the process of artificially synthesizing double-stranded DNA molecules in vitro as a technique for getting target genes. It is characterized by short synthesis cycle and is not limited by the source of the template. Gene synthesis is widely applied in various fields, including genetic engineering, synthetic biology, and biomedical research, enabling scientists to study, modify, and even create new genes and organisms.
A leader in Custom Gene Synthesis Solutions
Synbio Technologies is committed to providing customers with fast, accurate and reliable custom gene synthesis solutions. With ten-billion-base synthesis experience and advanced vector design platforms, we can skillfully overcome complex gene synthesis challenges, including high/low GC content, repetitive sequences, hairpin structures, etc. With our gene synthesis service, customers can also enjoy free codon optimization, vector build and storage services.
Benefits of Our Gene Synthesis Service
Our products are of the highest quality and competitively priced. We guarantee 100% accuracy in DNA synthesis and cloning into your desired vector! With our DNA synthesis technology, you can achieve fast gene synthesis to meet the needs of various artificial gene synthesis and gene synthesis applications.
Highlights
Optional Free codon optimization, vector build, and storage
AI-powered Perfect solution to complex gene synthesis
Cost-effective Lower prices and faster TAT
Accuracy Deliver 100% accurate DNA sequences
Service Details
Service Types | Gene Length | Price | Turnaround Time (Business Days) |
Standard Gene Synthesis | <251 bp | $50 | 5-10 |
251-1,500 bp | $0.20/bp | 5-10 | |
1,501-3,000 bp | $0.21/bp | 10-15 | |
3,001-4,500 bp | 15-20 | ||
4,501-6,000 bp | 20-25 | ||
6,001-8,000 bp | |||
>8,000 bp |
* Turnaround time applies to gene synthesis of non-complex sequences. For gene synthesis of complex sequences, please consult: quote@synbio-tech.com.
* Optional protein validation with ProXpress.
How Gene Synthesis Ordering System Makes Everything Easier?
Intelligent Sequence Complexity Evaluation
Our new system uses advanced algorithms to automatically analyze sequence complexity, providing detailed information about your gene without the need for manual calculations.
Protein Sequence Optimization
With a built-in protein sequence optimization module, the power to significantly improve both the stability and expression efficiency of your gene sequence is in the palm of your hands.
Real-time Quotes
Simply input your gene sequence and our system will automatically calculate the synthesis cost based on length, complexity, etc., providing a valuable project budget reference.
Our new gene synthesis order system is designed to revolutionize the way you synthesize genes. With a user-friendly interface and streamlined quotation process, ordering custom genes has never been easier. Your access to better, smarter genes is finally here!
Deliverables
Case Study
A case of complex gene synthesis and assembly for a 14kb fragment
Successfully synthesized a 14kb complex gene fragment and assembled the synthesized gene of interest onto pSynoYac0-Cm (approximately 10kb).
Difficulty Analysis of CI System
● The GC content in the target fragment fluctuates significantly, with some regions reaching as high as 100%.
● There are multiple repetitive sequences present within the target fragment.
GC Content Analysis of the Target Fragment
Repeat Sequence Analysis Chart of Target Fragment
FAQs
What are the factors that affect gene synthesis?
The factors that affect gene synthesis are primarily determined by sequence length, DNA structure, (including repetitive sequences, GC content, and other factors), and host cell stability.
Frameshift mutation occurs when the amount of nucleotides in a gene increases or decreases by a number that is not a multiple of three. Since three nucleotides encode for one amino acid, this alteration causes a shift in the reading frame of the DNA sequence. This results in the production of a non-functional or altered protein that differs from the intended one.
Codon bias refers to the unequal usage frequency of synonymous codons (codons that encode for the same amino acid) among different organisms. Understanding codon bias is crucial for optimizing gene expression in specific hosts.
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